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A dual-mode mm-wave injection-locked frequency divider with greater than 18% locking range in 65nm CMOS

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A dual-mode mm-wave injection-locked frequency divider with

greater than 18% locking range in 65nm CMOS

Citation for published version (APA):

Cheema, H. M., Yu, X. P., Mahmoudi, R., van Zeijl, P., & Roermund, van, A. H. M. (2010). A dual-mode mm-wave injection-locked frequency divider with greater than 18% locking range in 65nm CMOS. In Proceedings of the International Microwave Symposium Digest (MTT), 2010 IEEE MTT-S, May 23-28 2010, Anaheim, California (pp. WE3E-1/1). Institute of Electrical and Electronics Engineers. https://doi.org/10.1109/MWSYM.2010.5516767

DOI:

10.1109/MWSYM.2010.5516767

Document status and date: Published: 01/01/2010 Document Version:

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IMS 2010 Abstract Cards

WE3E-2

1:40 PM

A Dual-Mode mm-Wave Injection-Locked Frequency Divider with Greater than 18% Locking Range in 65nm CMOS

H. M. Cheema

1

, X. Yu

2

, R. Mahmoudi

1

, P. T. van Zeijl

3

, A. van Roermund

1

,

1

Eindhoven University of Technology, Eindhoven, Netherlands,

2

Zhejiang University, Hangzhou, China,

3

Philips Research, Eindhoven, Netherlands

A dual-mode mm-wave injection locked frequency divider operating at 39.5 and 59.5 GHz is presented. Achieving a locking range of

18% and 20% in divide-by-2 and 3 modes, it consumes 4 mW from a 0.8 V supply. Implemented in a bulk CMOS 65nm technology, it

occupies a core area of 0.03mm2. The dual-mode operation is enabled by differential direct injection and Miller capacitance de-tuning.

Two new figure-of-merits for proper comparison of ILFDs are also presented.

WE3E: Frequency Conversion and Control Component IC’s

Wednesday 26 May 2010

Time 13:20 - 14:40

Room: 207D

Chair: Brad Nelson, RFMD

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